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Effect of donor-acceptor molecular orientation on charge photogeneration in organic solar cells

机译:供体-受体分子取向对有机太阳能电池电荷光生的影响

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The relative orientation of an electron donor and electron acceptor, which significantly affects charge photogeneration in an organic solar cell, is investigated here. The effects of the molecular orientations at the donor-acceptor heterojunction are examined using bilayer solar cells comprising a fixed acceptor layer and donor polymer layers that assume a variety of orientations. The orientation of the conjugated polymer is controlled during film formation using solvents with slow or fast drying rates. Although the donor polymer layers show similar light-harvesting and nongeminate recombination dynamics, photocurrent generation is more efficient at the face-on donor-acceptor interface than at the edge-on interface. Photophysical analysis reveals that the efficient charge generation at the face-on interface originates from enhanced exciton diffusion toward the donor-acceptor interface and reduced geminate recombination of charge pairs. These findings offer clear evidence that the separation efficiency of an interfacial charge pair is affected by the relative orientations of the donor and acceptor molecules. This orientation should be controlled to maximize the PCE of an organic solar cell.
机译:本文研究了显着影响有机太阳能电池中电荷光生的电子给体和电子受体的相对取向。使用双层太阳能电池检查了分子取向在给体-受体异质结处的影响,该双层太阳能电池包括固定的受体层和采用各种取向的给体聚合物层。共轭聚合物的取向在成膜期间使用具有慢速或快干速率的溶剂来控制。尽管施主聚合物层表现出相似的聚光和非对位重组动力学,但是在面对面的施主-受体界面处比在边缘上的界面处产生光电流更有效。光物理分析表明,面对面界面处的有效电荷产生是由于激子向供体-受体界面的扩散增强,以及电荷对的叠合减少。这些发现提供了明确的证据,表明界面电荷对的分离效率受供体和受体分子的相对取向影响。应控制此方向以最大化有机太阳能电池的PCE。

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